mirror of
https://github.com/RaySollium99/picodrive.git
synced 2025-09-05 07:17:45 -04:00
328 lines
7.4 KiB
C
328 lines
7.4 KiB
C
/*
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* Platform interface functions for PSP picodrive frontend
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*
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* (C) 2020 kub
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <dirent.h>
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#include "../common/emu.h"
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#include "../libpicofe/menu.h"
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#include "../libpicofe/plat.h"
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#include <pspiofilemgr.h>
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#include <pspthreadman.h>
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#include <pspdisplay.h>
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#include <psputils.h>
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#include <psppower.h>
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#include <pspgu.h>
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#include <pspaudio.h>
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#include "psp.h"
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#include "emu.h"
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#include "asm_utils.h"
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#include <pico/pico_int.h>
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/* graphics buffer management in VRAM:
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* - VRAM_FB0, VRAM_FB1 frame buffers
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* - VRAM_DEPTH Z buffer (unused)
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* - VRAM_BUF0, VRAM_BUF1 emulator render buffers
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* Emulator screen output is using the MD screen resolutions and is rendered
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* to VRAM_BUFx and subsequently projected (that is, scaled and blitted) into
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* the associated frame buffer (in PSP output resolution). Additional emulator
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* output is then directly rendered to that frame buffer.
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* The emulator menu is rendered directly into the frame buffers, using the
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* native PSP resolution.
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* Menu background uses native resolution and is copied and shaded from a frame
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* buffer, or read in from a file if no emulator screen output is present.
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*/
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/* System level intialization */
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int plat_target_init(void)
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{
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psp_init();
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/* buffer resolutions */
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g_menuscreen_w = 480, g_menuscreen_h = 272, g_menuscreen_pp = 512;
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g_screen_width = 328, g_screen_height = 256, g_screen_ppitch = 512;
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g_menubg_src_w = 480, g_menubg_src_h = 272, g_menubg_src_pp = 512;
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/* buffer settings for menu display on startup */
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g_screen_ptr = VRAM_CACHED_STUFF + (psp_screen - VRAM_FB0);
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g_menuscreen_ptr = psp_screen;
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g_menubg_ptr = malloc(512*272*2);
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return 0;
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}
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/* System level deinitialization */
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void plat_target_finish(void)
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{
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psp_finish();
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}
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/* display a completed frame buffer and prepare a new render buffer */
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void plat_video_flip(void)
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{
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g_menubg_src_ptr = psp_screen;
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psp_video_flip(currentConfig.EmuOpt & EOPT_VSYNC);
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g_screen_ptr = VRAM_CACHED_STUFF + (psp_screen - VRAM_FB0);
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plat_video_set_buffer(g_screen_ptr);
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}
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/* wait for start of vertical blanking */
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void plat_video_wait_vsync(void)
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{
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sceDisplayWaitVblankStart();
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}
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/* switch from emulation display to menu display */
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void plat_video_menu_enter(int is_rom_loaded)
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{
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}
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/* start rendering a menu screen */
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void plat_video_menu_begin(void)
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{
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g_menuscreen_ptr = psp_screen;
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}
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/* display a completed menu screen */
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void plat_video_menu_end(void)
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{
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plat_video_wait_vsync();
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plat_video_flip();
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}
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/* terminate menu display */
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void plat_video_menu_leave(void)
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{
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}
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/* Preliminary initialization needed at program start */
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void plat_early_init(void)
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{
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}
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/* base directory for configuration and save files */
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int plat_get_root_dir(char *dst, int len)
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{
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if (len > 0) *dst = 0;
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return 0;
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}
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/* base directory for emulator resources */
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int plat_get_skin_dir(char *dst, int len)
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{
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if (len > 4)
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strcpy(dst, "skin/");
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else if (len > 0)
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*dst = 0;
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return strlen(dst);
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}
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/* top directory for rom images */
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int plat_get_data_dir(char *dst, int len)
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{
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if (len > 4)
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strcpy(dst, "ms0:/");
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else if (len > 0)
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*dst = 0;
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return strlen(dst);
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}
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/* check if path is a directory */
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int plat_is_dir(const char *path)
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{
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SceIoStat st;
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int ret = sceIoGetstat(path, &st);
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return (ret >= 0 && (st.st_mode & FIO_S_IFDIR));
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}
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/* current time in ms */
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unsigned int plat_get_ticks_ms(void)
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{
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/* approximate /= 1000 */
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unsigned long long v64;
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v64 = (unsigned long long)plat_get_ticks_us() * 4294968;
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return v64 >> 32;
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}
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/* current time in us */
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unsigned int plat_get_ticks_us(void)
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{
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return sceKernelGetSystemTimeLow();
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}
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/* sleep for some time in ms */
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void plat_sleep_ms(int ms)
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{
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psp_msleep(ms);
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}
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/* sleep for some time in us */
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void plat_wait_till_us(unsigned int us_to)
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{
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unsigned int tval;
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int diff;
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tval = sceKernelGetSystemTimeLow();
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diff = (int)us_to - (int)tval;
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if (diff >= 512 && diff < 100*1024)
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sceKernelDelayThread(diff);
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}
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/* wait until some event occurs, or timeout */
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int plat_wait_event(int *fds_hnds, int count, int timeout_ms)
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{
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return 0; // unused
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}
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/* memory mapping functions */
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void *plat_mmap(unsigned long addr, size_t size, int need_exec, int is_fixed)
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{
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return malloc(size);
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}
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void *plat_mremap(void *ptr, size_t oldsize, size_t newsize)
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{
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return realloc(ptr, newsize);
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}
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void plat_munmap(void *ptr, size_t size)
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{
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free(ptr);
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}
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void *plat_mem_get_for_drc(size_t size)
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{
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return NULL;
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}
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int plat_mem_set_exec(void *ptr, size_t size)
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{
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return 0;
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}
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/* get current CPU clock */
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static int plat_cpu_clock_get(void)
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{
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return scePowerGetCpuClockFrequencyInt();
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}
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/* set CPU clock */
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static int plat_cpu_clock_set(int clock)
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{
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if (clock < 33) clock = 33;
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if (clock > 333) clock = 333;
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return scePowerSetClockFrequency(clock, clock, clock/2);
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}
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/* get battery state in percent */
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static int plat_bat_capacity_get(void)
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{
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return scePowerGetBatteryLifePercent();
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}
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struct plat_target plat_target = {
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.cpu_clock_get = plat_cpu_clock_get,
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.cpu_clock_set = plat_cpu_clock_set,
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.bat_capacity_get = plat_bat_capacity_get,
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// .gamma_set = plat_gamma_set,
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// .hwfilter_set = plat_hwfilter_set,
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// .hwfilters = plat_hwfilters,
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};
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/* replacement libc stuff */
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int alphasort(const struct dirent **a, const struct dirent **b)
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{
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return strcoll ((*a)->d_name, (*b)->d_name);
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}
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int scandir(const char *dir, struct dirent ***namelist_out,
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int(*filter)(const struct dirent *),
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int(*compar)(const struct dirent **, const struct dirent **))
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{
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int ret = -1, dir_uid = -1, name_alloc = 4, name_count = 0;
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struct dirent **namelist = NULL, *ent;
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SceIoDirent sce_ent;
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namelist = malloc(sizeof(*namelist) * name_alloc);
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if (namelist == NULL) { lprintf("%s:%i: OOM\n", __FILE__, __LINE__); goto fail; }
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// try to read first..
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dir_uid = sceIoDopen(dir);
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if (dir_uid >= 0)
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{
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/* it is very important to clear SceIoDirent to be passed to sceIoDread(), */
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/* or else it may crash, probably misinterpreting something in it. */
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memset(&sce_ent, 0, sizeof(sce_ent));
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ret = sceIoDread(dir_uid, &sce_ent);
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if (ret < 0)
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{
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lprintf("sceIoDread(\"%s\") failed with %i\n", dir, ret);
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goto fail;
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}
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}
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else
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lprintf("sceIoDopen(\"%s\") failed with %i\n", dir, dir_uid);
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while (ret > 0)
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{
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ent = malloc(sizeof(*ent));
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if (ent == NULL) { lprintf("%s:%i: OOM\n", __FILE__, __LINE__); goto fail; }
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ent->d_stat = sce_ent.d_stat;
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ent->d_stat.st_attr &= FIO_SO_IFMT; // serves as d_type
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strncpy(ent->d_name, sce_ent.d_name, sizeof(ent->d_name));
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ent->d_name[sizeof(ent->d_name)-1] = 0;
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if (filter == NULL || filter(ent))
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namelist[name_count++] = ent;
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else free(ent);
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if (name_count >= name_alloc)
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{
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void *tmp;
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name_alloc *= 2;
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tmp = realloc(namelist, sizeof(*namelist) * name_alloc);
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if (tmp == NULL) { lprintf("%s:%i: OOM\n", __FILE__, __LINE__); goto fail; }
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namelist = tmp;
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}
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memset(&sce_ent, 0, sizeof(sce_ent));
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ret = sceIoDread(dir_uid, &sce_ent);
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}
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// sort
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if (compar != NULL && name_count > 3)
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qsort(&namelist[2], name_count - 2, sizeof(namelist[0]), (int (*)()) compar);
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// all done.
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ret = name_count;
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*namelist_out = namelist;
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goto end;
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fail:
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if (namelist != NULL)
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{
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while (name_count--)
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free(namelist[name_count]);
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free(namelist);
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}
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end:
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if (dir_uid >= 0) sceIoDclose(dir_uid);
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return ret;
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}
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int _flush_cache (char *addr, const int size, const int op)
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{
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//sceKernelDcacheWritebackAll();
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sceKernelDcacheWritebackRange(addr, size);
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sceKernelIcacheInvalidateRange(addr, size);
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return 0;
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}
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